首页> 外文会议>World Tribology Congress III 2005 vol.1 >EXPERIMENTAL VERIFICATION OF AN IMPROVED ELASTIC-PLASTIC STATIC FRICTION MODEL INCLUDING ROUGHNESS EFFECTS
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EXPERIMENTAL VERIFICATION OF AN IMPROVED ELASTIC-PLASTIC STATIC FRICTION MODEL INCLUDING ROUGHNESS EFFECTS

机译:包括粗糙度影响的改进的弹塑性静摩擦模型的实验验证

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An experimental study was performed to measure the static friction coefficient under different experimental conditions. These include different surface roughness conditions, the effect of dwell time, the effect of acceleration (sliding velocity) as well as the presence of traces of lubricant and wear debris at the interface. The static friction tester provides accurate measurement of friction, normal and lateral forces at the interface (using a high dynamic bandwidth piezoelectric force transducer) as well as precise motion control and measurement of the interface motion. The experimental measurements were subsequently compared with an improved elastic-plastic rough surface static friction model, and it was found that the model captures the experimental measurements well, especially in terms of surface roughness. However, the data also shows the limitations of the model as it fails to accurately capture the effects of experimental conditions such as the presence of wear debris and start up velocity.
机译:进行了一项实验研究,以测量不同实验条件下的静摩擦系数。这些因素包括不同的表面粗糙度条件,停留时间的影响,加速度(滑动速度)的影响以及界面处是否存在润滑剂和磨损碎片的痕迹。静摩擦测试仪可精确测量界面处的摩擦力,法向力和横向力(使用高动态带宽压电力传感器),以及精确的运动控制和界面运动测量。随后将实验测量值与改进的弹塑性粗糙表面静摩擦模型进行比较,发现该模型很好地捕获了实验测量值,尤其是在表面粗糙度方面。但是,数据也显示了该模型的局限性,因为它无法准确地捕获实验条件的影响,例如磨损碎片的存在和启动速度。

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